Study on the vibration characteristics of deep groove ball bearings under time-varying loads

Zeguang Han, Xiaofei Chen, Ruiqin Hao, Facai Liu, Jiaqi Li
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引用次数: 0

Abstract

A general methodology for dynamic modeling and analysis of deep groove ball bearing used in the crank-slider mechanism of punching machine is presented in this paper. The time-varying loads applied at the inner ring of this bearing can be obtained by analyzing the planar multibody systems. The bearing joint has been modeled by introducing a nonlinear constraint force system, which takes into account the contact stiffness interaction between the rolling elements and the raceways. The four-degree-of-freedom dynamic equations for the inner and outer rings of the bearings is established by Newton's second law. By numerical calculation, the variations of the load, trajectory, FFT frequency domain response, and x direction phase trajectory and Poincare of the inner ring, and the contact force on each ball element are discussed. The results indicate that the present methodology can not only be used to analyze the overall dynamic behavior of crank-slider mechanism and the deep groove ball bearing used in punching machine, but also to obtain the dynamic loads of the inner ring and ball in bearing. Therefore, the dynamic loads on ball elements can provide a basis for the strength checking, fatigue life calculation and wear analysis of the deep groove ball bearing.
时变载荷下深沟球轴承的振动特性研究
本文介绍了冲床曲柄滑块机构中使用的深沟球轴承动态建模和分析的一般方法。通过分析平面多体系统,可以获得施加在该轴承内圈上的时变载荷。通过引入一个非线性约束力系统对轴承接头进行建模,该系统考虑了滚动体和滚道之间的接触刚度相互作用。轴承内圈和外圈的四自由度动态方程由牛顿第二定律建立。通过数值计算,讨论了内圈的载荷、轨迹、FFT 频域响应、X 方向相位轨迹和 Poincare 的变化,以及每个球元件上的接触力。结果表明,本方法不仅可用于分析曲柄滑块机构和冲床所用深沟球轴承的整体动态行为,还可用于获取轴承内圈和球的动载荷。因此,球元件的动载荷可为深沟球轴承的强度校核、疲劳寿命计算和磨损分析提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.80
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